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Part A: Materials Science

New amorphous interface for precipitate nitrides in steel

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Pages 2339-2349 | Received 31 Oct 2013, Accepted 03 Apr 2014, Published online: 15 May 2014
 

Abstract

According to classical theories precipitate interfaces are described by their degree of coherency with the matrix, which affects their strengthening contribution. Investigations of nitride precipitate interfaces in 12% Cr steels with transmission electron microscopy have shown the nitrides to be enveloped in an amorphous shell a few nm thick, thus leaving them without any coherency with the matrix. The amorphous nature of the shells could be ascertained with high resolution microscopy and dark field techniques. When extracted from the ferrite matrix the amorphous shells were observed to crystallize during electron beam exposure. The amorphous shells were observed around Ta- and Nb-based nitrides, which are considered to have a high interfacial energy with the ferrite matrix. They were not observed around V-based nitrides which have a Baker–Nutting relationship with low-misfit to the matrix.

Funding

This work was supported by the Danish Research Council for Independent Research – Production and Technology Sciences under [grant number 10-093690].

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